Department of Pediatric Surgery, University Hospital Marburg, Baldingerstraße, 35033, Marburg, Germany.
Department of Cell Biology, Rostock University Medical Center, Schillingallee 69, 18057, Rostock, Germany.
Sci Rep. 2018 Oct 18;8(1):15399. doi: 10.1038/s41598-018-33677-4.
Since it is known that cancer cells exhibit a preference for increased glycine consumption, the respective glycine metabolizing enzymes are in focus of many research projects. However, no cancer associated studies are available for the Glycine Cleavage System Protein H (GCSH) to date. Our initial analysis revealed a GCSH-overexpression of the protein-coding transcript variant 1 (Tv1) in breast cancer cells and tissue. Furthermore, a shorter (391 bp) transcript variant (Tv*) was amplified with an increased expression in healthy breast cells and a decreased expression in breast cancer samples. The Tv1/Tv* transcript ratio is 1.0 in healthy cells on average, and between 5-10 in breast cancer cells. Thus, a GCSH-equilibrium at the transcript level is likely conceivable for optimal glycine degradation. A possible regulative role of Tv* was proven by Tv1-Tv*-RNA-binding and overexpression studies which consequently led to serious physiological alterations: decreased metabolic activity, release of the lactate dehydrogenase, increased extracellular acidification, and finally necrosis as a result of impaired plasma membranes. In contrast, Tv1-overexpression led to an additional increase in cellular vitality of the tumor cells, primarily due to the acceleration of the mitochondrial glycine decarboxylation activity. Ultimately, we provide the first evidence of a sensitive GCSH-antisense regulation which determines cancerous cell viability.
由于已知癌细胞表现出对增加的甘氨酸消耗的偏好,因此许多研究项目都集中在甘氨酸代谢酶上。然而,迄今为止,尚无与癌症相关的 Glycine Cleavage System Protein H(GCSH)研究。我们的初步分析显示,乳腺癌细胞和组织中存在蛋白质编码转录变体 1(Tv1)的 GCSH 过表达。此外,还扩增了较短的(391bp)转录变体(Tv*),在健康乳腺细胞中表达增加,在乳腺癌样本中表达降低。Tv1/Tv转录本的比值在健康细胞中平均为 1.0,而在乳腺癌细胞中为 5-10。因此,在转录水平上 GCSH 平衡可能是甘氨酸降解的最佳状态。通过 Tv1-Tv-RNA 结合和过表达研究证明了 Tv*的可能调节作用,这导致了严重的生理变化:代谢活性降低、乳酸脱氢酶释放、细胞外酸化增加,最终由于质膜受损而导致坏死。相比之下,Tv1 的过表达导致肿瘤细胞的细胞活力进一步增加,主要是由于线粒体甘氨酸脱羧酶活性的加速。最终,我们提供了第一个敏感的 GCSH 反义调节的证据,该调节决定了癌细胞的存活能力。